Capacitor corrosion prevention processing device

By designing a capacitor anti-corrosion processing device, and utilizing a vibratory feeder and automated components to achieve automated painting of capacitors, the problem of low automation in the anti-corrosion painting process of cylindrical capacitors was solved, improving processing efficiency and automation level, and saving costs.

CN119140317BActive Publication Date: 2025-12-16NANTONG TONGRONG ELECTRONIC CO LTD
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Patent Information

Application Number
CN202411299523.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-18
Publication Date
2025-12-16
Estimated Expiration
2044-09-18

AI Technical Summary

Technical Problem

In the existing technology, the painting and anti-corrosion treatment of cylindrical capacitors has a low degree of automation, resulting in low processing efficiency and requiring a large amount of manual operation.

Method used

The capacitor anti-corrosion processing device consists of components such as brackets, support plates, vibratory feeders, guide plates, and spray guns. The vibratory feeder transports the capacitors, and the distribution and sliding components realize the automated painting process of the capacitors. The spray gun slides along the support plate to spray paint, and the capacitors automatically roll off after painting, without the need for manual operation.

Benefits of technology

The automated batch painting and anti-corrosion treatment of cylindrical capacitors has been realized, which improves the degree of automation and processing efficiency, reduces the impact of collisions between adjacent capacitors during painting, and saves the manufacturing cost of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to a capacitor anticorrosion processing device and relates to the technical field of capacitor production and processing. The device comprises a support, support plates, a material conveying groove and a vibrating disc. A feeding port is formed in the side wall of the support plate. A material guide plate is arranged between the support plates in an inclined mode. A material distribution frame is arranged on the side wall of one of the support plates in a rotating mode. First and second material distribution plates are arranged on the material distribution frame. First material distribution rods are arranged on the bottom wall of the first material distribution plate. A material distribution groove is formed in the surface of the material guide plate. Second material distribution rods are arranged on the second material distribution plate. A material distribution assembly is arranged on the side wall of the support plate. A paint spraying gun is arranged on the support plate in a sliding mode. A sliding assembly is arranged on the support plate. The application has the advantages that batch cylindrical capacitors can be conveniently painted for anticorrosion treatment, and the automation degree and processing efficiency are improved.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of capacitor production and processing, in particular to a capacitor anti-corrosion processing device. BACKGROUND

[0002] Currently, two conductors close to each other are sandwiched by an insulating medium, which constitutes a capacitor. When a voltage is applied between the two plates of the capacitor, the capacitor will store electric charge. The capacitor shell is the shell for loading the capacitor element, and the capacitor shell needs to be painted during production to form a protective layer on the surface and improve the anti-corrosion effect of the capacitor to prolong the service life.

[0003] In the related art, when the cylindrical capacitor is subjected to anti-corrosion paint spraying treatment, the capacitor is difficult to fix due to its cylindrical shape. When spraying paint, the staff generally manually spray anti-corrosion paint on the capacitor, which requires a large amount of manual labor, is not convenient for batch spraying of the capacitor, has low automation degree and low processing efficiency, and thus needs to be improved. SUMMARY

[0004] The application aims to provide a capacitor anti-corrosion processing device which has the advantages of facilitating batch spraying of the cylindrical capacitor, improving the automation degree and processing efficiency.

[0005] The capacitor anti-corrosion processing device provided by the application adopts the following technical scheme:

[0006] A capacitor anti-corrosion processing device comprises a support, support plates, a conveying groove and a vibrating disc. Two support plates are symmetrically arranged on the support in the horizontal direction. A feeding port is formed in the side wall of each support plate. The conveying groove is arranged between the vibrating disc and the support plates. One end of the conveying groove is in communication with the feeding port, and the other end of the conveying groove is in communication with the discharging port of the vibrating disc. A guide plate is arranged between the support plates in an inclined manner, and the feeding port is located directly above the highest end of the guide plate. A distribution frame is rotatably arranged on the side wall of one of the support plates. A first distribution plate and a second distribution plate are arranged on the distribution frame. The first distribution plate is located above the support plate, and the second distribution plate is located below the support plate. A first distribution rod is arranged on the bottom wall of the first distribution plate and can be inserted between the support plates. A distribution groove is formed in the surface of the guide plate. A second distribution rod is arranged on the second distribution plate and can extend through the distribution groove and into the support plates. A distribution assembly is arranged on the side wall of the support plate and used to drive the rotation of the distribution frame. A paint spraying gun is slidably arranged on the support plate. A sliding assembly is arranged on the support plate and used to drive the paint spraying gun to slide along the length direction of the support plate.

[0007] By adopting the technical scheme, when batch painting anticorrosion processing is performed on capacitors, the cylindrical capacitors are transported in the vibrating disc, the vibrating disc drives the capacitors to enter the conveying groove from the discharging port of the vibrating disc, the capacitors are orderly arranged and conveyed in the conveying groove, and the conveying groove is obliquely arranged to convey the capacitors to the support plates through the feeding port; since the feeding port is located directly above the highest end of the guide plate, the capacitor falls into the guide plate and rolls on the guide plate, the capacitor is orderly arranged on the guide plate by the limiting of the first distribution rod, and the support plates are attached to the two ends of the capacitor, so that the capacitor is arranged along the width direction of the guide plate; during the painting process, the distribution assembly drives the distribution frame to rotate, the distribution frame is first lifted, the first distribution rod is driven away from the guide plate by the distribution frame, and the second distribution rod on the second distribution plate is driven to rise through the distribution groove by the distribution frame, the first distribution rod gives way to one capacitor to slide off the guide plate, and the second distribution rod simultaneously limits the next capacitor, the distribution assembly drives the distribution frame to reciprocate, and the first distribution rod and the second distribution rod continuously rise and fall to make the capacitors sequentially and intermittently slide off the guide plate, so that the influence caused by the collision between adjacent capacitors during painting is reduced; when the capacitors slide and roll on the guide plate, the sliding assembly drives the paint gun to slide along the length direction of the support plate, the paint gun sprays paint on the surface of the rolling capacitor, different positions on the surface of the capacitor can be painted, and the capacitor automatically rolls off the guide plate after painting, so that manual operation is not needed, the cylindrical capacitors can be automatically batch painted and anticorrosion processed by only placing the capacitors in the vibrating disc, and the production automation degree and the processing efficiency are improved.

[0008] Optionally, the distribution assembly comprises a first motor, a rotating shaft and a cam, the first motor is arranged on one side of the support plate in the direction of the distribution frame, the rotating shaft is in communication with the driving shaft of the first motor, and the cam is arranged on the rotating shaft and abuts against the bottom wall of the distribution frame.

[0009] By adopting the technical scheme, when the distribution frame needs to be driven to rotate up and down on the side wall of the support frame, the first motor is started, the first motor drives the rotating shaft to rotate, the rotating shaft drives the cam to rotate, the tip of the cam abuts against the bottom end of the distribution frame, the distribution frame is lifted, and the first distribution rod is driven away from the guide plate and the second distribution rod is driven to rise to limit the next capacitor; with the rotation of the rotating shaft, the tip of the cam gradually moves away from the bottom end of the distribution frame, the distribution frame gradually descends under the action of gravity, the second distribution rod descends below the distribution groove, the first distribution rod continues to limit all the capacitors on the guide plate, and the first motor drives the cam to continuously rotate, so that the distribution frame continuously and automatically swings up and down.

[0010] Optionally, the sliding assembly comprises a sliding rail, a sliding frame, a linkage disc and a linkage rod, the sliding rail is arranged on the side wall of the support plate, the length direction of the sliding rail is arranged along the length direction of the support plate, the sliding frame is arranged on the sliding rail, the paint spraying gun is arranged on the sliding frame, the linkage disc is connected with the rotating shaft, one end of the linkage rod is hingedly connected with the surface of the linkage disc, and the other end of the linkage rod is hingedly connected with the sliding frame.

[0011] By adopting the above technical scheme, when the tip of the cam driven by the first motor is about to abut against the bottom end of the distribution frame, the sliding frame is located at one end of the sliding rail close to the cam, the first motor drives the cam to continue rotating, the rotating shaft drives the linkage disc to rotate, the linkage disc drives the sliding frame to slide on the sliding rail through the linkage rod, so that the capacitor is just released, and the sliding frame slides away from the cam on the sliding rail at the same time, so that the paint spraying gun on the sliding frame is kept synchronous with the capacitor when the capacitor rolls on the guide plate, and the paint spraying gun continuously locates above the capacitor, so that multiple paint spraying guns are not needed, and the rotating shaft is used to control the reciprocating sliding of the paint spraying gun, thereby saving the manufacturing cost of the device.

[0012] Optionally, the side wall of the distribution frame is provided with a sliding groove, a screw rod is rotatably arranged in the sliding groove, the end of the second distribution plate is slidably arranged in the sliding groove and is threadedly connected with the screw rod, and the end of the screw rod is connected with a handle.

[0013] By adopting the above technical scheme, the handle is rotated to drive the screw rod to rotate in the sliding groove, the end of the second distribution plate is guided by the sliding groove, the second distribution plate is driven to slide in the sliding groove, the second distribution plate slides along the length direction of the distribution frame, the distance between the first distribution plate and the second distribution plate is adjusted, the distance between the first distribution rod and the second distribution rod is changed, and therefore the distribution frame can distribute capacitors of different diameters, and the applicability of the device is improved.

[0014] Optionally, the top end of the guide plate is rotatably connected with the support plate, the end wall of the guide plate is symmetrically provided with a group of guide blocks, the side wall of the support plate is provided with a guide groove, the guide blocks are slidably arranged in the guide groove, and the support plate is provided with an adjusting assembly for driving the guide blocks to slide in the guide groove.

[0015] Optionally, the adjusting assembly comprises an adjusting block, an abutting block, a second motor and a screw rod, the side wall of the support plate is provided with an adjusting groove along the length direction thereof, the adjusting block is slidably arranged in the adjusting groove, the screw rod is rotatably arranged in the adjusting groove, the second motor is arranged in the adjusting groove and is connected with the screw rod, the adjusting block is threadedly connected with the screw rod, the abutting block is connected with the adjusting block, the surface of the abutting block is obliquely provided with an abutting surface, and the abutting surface abuts against the guide block.

[0016] By adopting the technical scheme, the second motor is used to drive the screw rod to rotate, the adjusting block is guided by the adjusting groove, the adjusting block can slide along the length direction of the adjusting groove on the surface of the screw rod, the adjusting block drives the abutting block to slide along the length direction of the supporting plate when the adjusting block slides, the abutting block is close to or away from the guiding block, the guiding block slides on the abutting surface, the abutting block abuts against the guiding block due to the inclination of the abutting surface, and then the guiding block slides in the guiding groove, the position of the guiding block in the guiding groove is changed, the inclination angle between the guide plate and the supporting plate can be controlled, the speed of the capacitor rolling on the guide plate can be controlled, and different processing requirements can be met.

[0017] Optionally, a surface of the guide plate is provided with a surface groove along the length direction thereof, a recovery plate is arranged between the supporting plates and below the surface groove, a recovery groove is formed in the recovery plate, and the recovery plate is detachably connected with the supporting plates.

[0018] By adopting the technical scheme, the surface groove can reduce the contact area between the capacitor and the guide plate when the sliding assembly drives the paint spraying gun to slide on the supporting plate to spray paint, the capacitor is not easy to adhere to the guide plate after the anticorrosive paint adheres to the surface of the capacitor, and the paint spraying anticorrosive effect is improved; meanwhile, the recovery plate below the surface groove can recover and reuse the excess paint, and the energy-saving and environment-friendly effect is achieved.

[0019] Optionally, a drying device is arranged between the supporting plates.

[0020] By adopting the technical scheme, after the paint spraying gun sprays paint on the rolled capacitor, the capacitor rolls below the drying device, the drying device dries the anticorrosive paint on the surface of the capacitor, and the anticorrosive protective layer is quickly formed.

[0021] In summary, the present application has at least one of the following beneficial technical effects:

[0022] 1. By arranging the support, the supporting plate, the material conveying groove, the vibrating disc, the feeding port, the guide plate, the material distribution frame, the first material distribution plate, the second material distribution plate, the first material distribution rod, the material distribution groove, the second material distribution rod, the material distribution assembly, the paint spraying gun and the sliding assembly, the material distribution assembly drives the material distribution frame to reciprocate, the first material distribution rod and the second material distribution rod continuously rise and fall to make the capacitors slide on the guide plate in turn, the collision between adjacent capacitors during paint spraying is reduced, the sliding assembly drives the paint spraying gun to slide when the capacitors slide and roll on the guide plate, the paint spraying gun sprays paint on the surface of the rolling capacitor, different positions on the surface of the capacitor can be sprayed, the capacitor automatically rolls off the guide plate after paint spraying, and manual operation is not needed, the capacitors only need to be placed in the vibrating disc, and the cylindrical capacitors can be automatically batched for paint spraying and anticorrosive treatment, the production automation degree and the processing efficiency are improved.

[0023] 2. By setting the first motor, rotating shaft and cam, the first motor drives the rotating shaft to rotate, and the rotating shaft drives the cam to rotate. When the tip of the cam abuts against the bottom end of the distribution frame, the distribution frame is lifted, and the first distribution rod moves away from the guide plate and the second distribution rod rises to limit the next capacitor. With the rotation of the rotating shaft, the tip of the cam gradually moves away from the bottom end of the distribution frame, and the distribution frame gradually descends under the action of gravity. The second distribution rod descends below the distribution groove, and the first distribution rod continues to limit all capacitors on the guide plate. The first motor drives the cam to continue rotating, so that the distribution frame automatically swings up and down continuously, and the control is convenient and fast.

[0024] 3. By setting the sliding rail, sliding frame, linkage disc and linkage rod, when the tip of the cam abuts against the bottom end of the distribution frame, the rotating shaft drives the linkage disc to rotate, and the linkage disc drives the sliding frame to slide on the sliding rail through the linkage rod, so that an electric capacitor is just released. At the same time, the sliding frame slides away from the cam on the sliding rail. In this way, when the capacitors roll on the guide plate, the paint spraying gun on the sliding frame keeps synchronous with the capacitors, and the paint spraying gun continuously locates above the capacitors. In this way, multiple paint spraying guns are not needed, and the rotating shaft is used to control the reciprocating sliding of the paint spraying gun, so that the manufacturing cost of the device is saved. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 is a whole schematic view of a capacitor anticorrosion processing device provided by the embodiment of the application;

[0026] Figure 2 is a whole schematic view of a capacitor anticorrosion processing device provided by the embodiment of the application;

[0027] Figure 3 is a partial schematic view of a capacitor anticorrosion processing device provided by the embodiment of the application;

[0028] In the figure, 1 is a support, 11 is a support plate, 111 is an inlet, 12 is a paint spraying gun, 2 is a conveying groove, 21 is a vibrating disc, 3 is a guide plate, 31 is a distribution groove, 32 is a let-in groove, 33 is a guide block, 331 is a guide groove, 4 is a distribution frame, 41 is a first distribution plate, 411 is a first distribution rod, 42 is a second distribution plate, 422 is a second distribution rod, 5 is a distribution assembly, 51 is a first motor, 52 is a rotating shaft, 53 is a cam, 6 is a sliding assembly, 61 is a sliding rail, 62 is a sliding frame, 63 is a linkage disc, 64 is a linkage rod, 7 is a sliding groove, 71 is a screw rod, 72 is a handle, 8 is an adjusting assembly, 81 is an adjusting block, 811 is an adjusting groove, 82 is an abutting block, 821 is an abutting surface, 83 is a second motor, 84 is a screw rod, 9 is a recycling plate, 91 is a recycling groove, and 10 is a dryer. DETAILED DESCRIPTION

[0029] The application will be further described in detail below with reference to the accompanying drawings Figure 1 - the drawings Figure 3 , and a further detailed description of the application.

[0030] The application discloses a capacitor anticorrosion processing device, which refers to Figures 1 to 3 , comprising a support 1, a support plate 11, a conveying chute 2 and a vibrating disc 21, two of the support plates 11 are symmetrically arranged on the support 1 in the horizontal direction. A feeding port 111 for the capacitor to pass through is formed in the side wall of the support plate 11, and the conveying chute 2 is obliquely arranged between the vibrating disc 21 and the support plate 11. One end of the conveying chute 2 is in communication with the feeding port 111, and the other end of the conveying chute 2 is in communication with the discharging port of the vibrating disc 21. A guide plate 3 is obliquely arranged between the support plates 11, and the feeding port 111 is located directly above the highest end of the guide plate 3. When batch anticorrosion processing of the capacitors is performed, the cylindrical capacitors are transported in the vibrating disc 21. The vibrating disc 21 drives the capacitors to enter the conveying chute 2 from the discharging port of the vibrating disc 21, and the capacitors are orderly arranged and conveyed in the conveying chute 2. The oblique arrangement of the conveying chute 2 can convey the capacitors to the space between the support plates 11 through the feeding port 111, and the capacitors passing through the feeding port 111 will fall on the guide plate 3.

[0031] Refer to Figure 2 and Figure 3 One side wall of one of the support plates 11 is rotatably provided with a distributing frame 4, the distributing frame 4 is provided with a first distributing plate 41 and a second distributing plate 42, the first distributing plate 41 and the second distributing plate 42 are both arranged along the width direction of the guide plate 3, the first distributing plate 41 is located above the support plate 11, and the second distributing plate 42 is located below the support plate 11. A first distributing rod 411 that can be inserted between the support plates 11 is arranged on the bottom wall of the first distributing plate 41, a distributing groove 31 is formed in the surface of the guide plate 3, and a second distributing rod 422 that can extend into the space between the support plates 11 through the distributing groove 31 is arranged on the second distributing plate 42. Since the feeding port 111 is located directly above the highest end of the guide plate 3, the capacitors will roll on the guide plate 3 after falling on the guide plate 3, the capacitors are orderly arranged on the guide plate 3 by being limited by the first distributing rod 411, and the support plates 11 limit the two ends of the capacitors, so that the capacitors are orderly arranged in the space between the support plates 11 along the width direction of the guide plate 3.

[0032] Refer to Figure 2 and Figure 3The side wall of the support plate 11 is provided with the material distribution assembly 5, the paint spraying gun 12 is slidably arranged on the support plate 11 along the length direction of the support plate 11, and the support plate 11 is provided with the sliding assembly 6. During the paint spraying process, the material distribution assembly 5 drives the material distribution frame 4 to rotate, the material distribution frame 4 is first lifted, the first material distribution rod 411 is driven by the material distribution frame 4 to move away from the guide plate 3, and the second material distribution rod 422 on the second material distribution plate 42 is driven by the material distribution frame 4 to ascend through the material distribution groove 31, the first material distribution rod 411 is moved to make way for a capacitor to slide off the guide plate 3, and the second material distribution rod 422 simultaneously limits the next capacitor. The material distribution assembly 5 drives the material distribution frame 4 to reciprocate, the first material distribution rod 411 and the second material distribution rod 422 are continuously lifted and lowered to make the capacitors on the guide plate 3 sequentially and intermittently slide off, thereby reducing the influence caused by the collision between adjacent capacitors during the paint spraying process. When the capacitors slide and roll on the guide plate 3, the sliding assembly 6 drives the paint spraying gun 12 to slide along the length direction of the support plate 11, the paint spraying gun 12 sprays paint on the surface of the rolling capacitor, different positions on the surface of the capacitor can be sprayed, and the capacitor automatically rolls off the guide plate 3 after the paint spraying.

[0033] With reference to Figure 2 and Figure 3 The material distribution assembly 5 comprises a first motor 51, a rotating shaft 52 and a cam 53. The first motor 51 is arranged on one side of the support plate 11 facing the material distribution frame 4, the rotating shaft 52 is in communication with the driving shaft of the first motor 51, and the cam 53 is fixedly arranged on the rotating shaft 52. When it is necessary to drive the material distribution frame 4 to swing up and down on the side wall of the support frame, the first motor 51 drives the rotating shaft 52 to rotate, the rotating shaft 52 drives the cam 53 to rotate, the tip of the cam 53 abuts against the bottom end of the material distribution frame 4, thereby driving the material distribution frame 4 to be lifted, and further driving the first material distribution rod 411 to move away from the guide plate 3 to release a capacitor, while the second material distribution rod 422 is lifted to limit the next capacitor. With the rotation of the rotating shaft 52, the tip of the cam 53 gradually moves away from the bottom end of the material distribution frame 4, and under the action of gravity, the material distribution frame 4 gradually descends, the second material distribution rod 422 descends below the material distribution groove 31, and the first material distribution rod 411 continues to limit all capacitors on the guide plate 3. The first motor 51 drives the cam 53 to continuously rotate, and the process is repeated, so that the material distribution frame 4 is continuously and automatically swung up and down, and the control is convenient and fast.

[0034] With reference to Figure 2 and Figure 3, the sliding assembly 6 comprises a sliding rail 61, a sliding frame 62, a linkage disc 63 and a linkage rod 64, the sliding rail 61 is fixed on the side wall of the support plate 11, the length direction of the sliding rail 61 is arranged along the length direction of the support plate 11, the sliding frame 62 is slidably arranged on the sliding rail 61, the paint spraying gun 12 is installed on the sliding frame 62, the linkage disc 63 is connected with the rotating shaft 52, the linkage disc 63 is coaxially arranged between the cam 53, one end of the linkage rod 64 is hingedly connected with the surface of the linkage disc 63, and the other end of the linkage rod 64 is hingedly connected with the sliding frame 62. When the first motor 51 drives the tip of the cam 53 to abut against the bottom end of the material distribution frame 4, the sliding frame 62 is located at one end of the sliding rail 61 close to the cam 53, the first motor 51 drives the cam 53 to continue to rotate, the rotating shaft 52 drives the linkage disc 63 to rotate, the linkage disc 63 drives the sliding frame 62 to slide on the sliding rail 61 through the linkage rod 64, so that the capacitor is just released, and the sliding frame 62 slides away from the cam 53 on the sliding rail 61. When the capacitor rolls on the guide plate 3, the paint spraying gun 12 on the sliding frame 62 is synchronous with the capacitor, and the paint spraying gun 12 continuously locates above the capacitor, so that multiple paint spraying guns 12 are not needed, the paint spraying gun 12 reciprocally slides by rotating the rotating shaft 52, and the device manufacturing cost is saved.

[0035] With reference to Figure 3 , the surface of the guide plate 3 is provided with a surface slot 32 along the length direction, when the capacitor rolls on the guide plate 3, the sliding assembly 6 drives the paint spraying gun 12 to slide on the support plate 11 to spray paint, the surface slot 32 can reduce the contact area between the capacitor and the guide plate 3, the capacitor surface adheres to the anticorrosive paint and is not easy to adhere to the guide plate 3, thereby improving the anticorrosive effect of the paint spraying. The recovery plate 9 is arranged between the support plates 11 and below the surface slot 32, the recovery plate 9 is provided with a recovery groove 91, the recovery plate 9 is detachably connected with the support plate 11 through bolts, and the paint spraying gun 12 slides on the support plate 11 to spray paint.

[0036] With reference to Figure 3The side wall of the distributing frame 4 is provided with a sliding groove 7 in a length direction of the distributing frame 4, the end of the second distributing plate 42 is threadedly connected with the sliding groove 7, and the end of the screw rod 71 is connected with a handle 72 penetrating through the distributing frame 4. When the handle 72 is rotated, the screw rod 71 is rotated in the sliding groove 7, the end of the second distributing plate 42 is guided by the sliding groove 7, the second distributing plate 42 is slid in the sliding groove 7, the second distributing plate 42 is slid in the length direction of the distributing frame 4, the distance between the first distributing plate 41 and the second distributing plate 42 is adjusted, the distance between the first distributing rod 411 and the second distributing rod 422 is changed, the distributing frame 4 can distribute capacitors with different diameters, and the applicability of the device is improved.

[0037] With reference to Figure 1 The top end of the material guiding plate 3 is rotationally connected with the supporting plate 11, the end wall of the material guiding plate 3 is symmetrically provided with a group of guide blocks 33, the end wall of the material guiding plate 3 is symmetrically provided with a group of guide blocks 33, and the side wall of the supporting plate 11 is provided with a guide groove 331 for inserting and sliding the guide blocks 33. The supporting plate 11 is provided with an adjusting assembly 8, the adjusting assembly 8 comprises an adjusting block 81, an abutting block 82, a second motor 83 and a screw rod 84, the side wall of the supporting plate 11 is provided with an adjusting groove 811 in a length direction of the supporting plate 11, the adjusting block 81 is slidably arranged in the adjusting groove 811, the screw rod 84 is rotationally arranged in the adjusting groove 811, the second motor 83 is arranged in the adjusting groove 811, the driving shaft of the second motor 83 is connected with the screw rod 84, the adjusting block 81 is threadedly connected with the screw rod 84, and the abutting block 82 is connected with the adjusting block 81. The surface of the abutting block 82 is obliquely provided with an abutting surface 821. The second motor 83 is operated to drive the screw rod 84 to rotate, the adjusting block 81 is guided by the adjusting groove 811, the adjusting block 81 can slide on the surface of the screw rod 84 in the length direction of the adjusting groove 811, the adjusting block 81 drives the abutting block 82 to slide in the length direction of the supporting plate 11 when the adjusting block 81 slides, the abutting block 82 is used to approach or move away from the guide blocks 33, the guide blocks 33 slide on the abutting surface 821, the abutting surface 821 is inclined, the abutting block 82 abuts against the guide blocks 33, the guide blocks 33 are controlled to slide in the guide groove 331, the position of the guide blocks 33 in the guide groove 331 is changed, the inclination angle between the material guiding plate 3 and the supporting plate 11 is controlled, the speed of the capacitors rolling on the material guiding plate 3 is controlled, and different processing requirements can be met.

[0038] With reference to Figure 3 The supporting plates 11 are provided with a dryer 10, the capacitors roll under the dryer 10 after being sprayed by the paint spray gun 12, the dryer 10 dries the anticorrosive paint on the surface of the capacitors, and the anticorrosive protective layer is quickly formed.

[0039] The implementation principle of the embodiment of the present application is:

[0040] The vibration disc 21 drives the capacitor to enter the feeding groove 2 from the discharge port of the vibration disc 21, and the capacitor is orderly arranged and conveyed in the feeding groove 2. The feeding groove 2 is arranged obliquely, so that the capacitor is conveyed to the support plates 11 through the feeding port 111. Since the feeding port 111 is located directly above the highest end of the guide plate 3, the capacitor falls into the guide plate 3 and rolls on the guide plate 3. The capacitor is orderly arranged on the guide plate 3 by the limiting of the first distribution rod 411, and the two ends of the capacitor are limited by the support plates 11, so that the capacitor is orderly arranged between the support plates 11 along the width direction of the guide plate 3. During the paint spraying process, the first motor 51 drives the cam 53 to rotate. After the tip of the cam 53 abuts against the bottom end of the distribution frame 4, the distribution frame 4 is lifted, and then the first distribution rod 411 is driven to move away from the guide plate 3 and the second distribution rod 422 is driven to rise to limit the next capacitor. With the rotation of the rotating shaft 52, the tip of the cam 53 gradually moves away from the bottom end of the distribution frame 4. Under the action of gravity, the distribution frame 4 gradually descends, the second distribution rod 422 descends below the distribution groove 31, and the first distribution rod 411 continues to limit all the capacitors on the guide plate 3. In this way, the distribution assembly 5 drives the distribution frame 4 to reciprocate up and down, and the first distribution rod 411 and the second distribution rod 422 continuously rise and fall to make the capacitors on the guide plate 3 fall one by one, thereby reducing the influence caused by the collision between adjacent capacitors during paint spraying. When the first motor 51 drives the rotating shaft 52 to rotate, the rotating shaft 52 drives the linkage disc 63 to rotate, the linkage disc 63 drives the sliding frame 62 to slide on the sliding rail 61 through the linkage rod 64, so that the capacitor is just released at the same time, and the sliding frame 62 slides away from the cam 53 on the sliding rail 61. In this way, when the capacitor rolls on the guide plate 3, the paint spraying gun 12 on the sliding frame 62 is kept synchronous with the capacitor, the paint spraying gun 12 continuously locates above the capacitor, the paint spraying gun 12 sprays paint on the surface of the rolling capacitor, and the capacitor can be sprayed on different positions of the surface. After the paint spraying, the capacitor automatically rolls off the guide plate 3 without manual operation. Only by placing the capacitor in the vibration disc 21, the cylindrical capacitor can be automatically batched for paint spraying and corrosion prevention treatment, thereby improving the production automation degree and processing efficiency.

[0041] The embodiments of the present application are preferred embodiments of the present application, and are not limited to the protection scope of the present application. The same parts are indicated by the same reference numerals. Therefore, equivalent changes made according to the structure, shape and principle of the present application should be covered by the protection scope of the present application.

Claims

1. A capacitor anticorrosion processing device characterized by comprising: The utility model provides a kind of paint spraying device, including support (1), support plate (11), feed channel (2) and vibrating disc (21), the support plate (11) is symmetrically provided with two in horizontal direction on support (1), the side wall of support plate (11) is equipped with feed inlet (111), the feed channel (2) is arranged between vibrating disc (21) and support plate (11), one end of feed channel (2) and feed inlet (111) are interconnected, the other end of feed channel (2) and the discharge port of vibrating disc (21) are interconnected;The guide plate (3) is obliquely arranged between the support plate (11), the feed inlet (111) is located in the highest end of guide plate (3) directly above;One side wall of the support plate (11) is rotatably provided with a distribution frame (4), the distribution frame (4) is provided with a first distribution plate (41) and a second distribution plate (42), the first distribution plate (41) is located above the support plate (11), the second distribution plate (42) is located below the support plate (11), the bottom wall of the first distribution plate (41) is provided with a first distribution rod (411) which can be inserted between the support plate (11), the surface of the guide plate (3) is provided with a distribution groove (31), the second distribution plate (42) is provided with a second distribution rod (422) which can be inserted into the support plate (11) through the distribution groove (31), the side wall of the support plate (11) is provided with a distribution assembly (5) for driving the rotation of the distribution frame (4);The support plate (11) is slidably provided with a paint spraying gun (12), the support plate (11) is provided with a sliding assembly (6) for driving the paint spraying gun (12) to slide along the length direction of the support plate (11), when the capacitor rolls down on the guide plate (3), the paint spraying gun (12) is kept synchronous with the capacitor, the paint spraying gun (12) continuously locates above the capacitor, the paint spraying gun (12) sprays paint on the surface of the rolling capacitor, and different positions on the surface of the capacitor can be sprayed and treated.

2. The capacitor corrosion prevention processing apparatus according to claim 1, wherein The distribution assembly (5) includes a first motor (51), a rotating shaft (52) and a cam (53), the first motor (51) is arranged on one side of the support plate (11) towards the distribution frame (4), the rotating shaft (52) is in communication with the drive shaft of the first motor (51), the cam (53) is arranged on the rotating shaft (52), and the cam (53) abuts against the bottom wall of the distribution frame (4).

3. The capacitor corrosion-proof processing device according to claim 2, wherein The sliding assembly (6) includes a sliding rail (61), a sliding frame (62), a linkage disc (63) and a linkage rod (64), the sliding rail (61) is arranged on the side wall of the support plate (11), the length direction of the sliding rail (61) is arranged along the length direction of the support plate (11), the sliding frame (62) is slidably arranged on the sliding rail (61), the paint spraying gun (12) is arranged on the sliding frame (62), the linkage disc (63) is connected with the rotating shaft (52), one end of the linkage rod (64) is hinged to the surface of the linkage disc (63), and the other end of the linkage rod (64) is hinged to the sliding frame (62).

4. The capacitor corrosion-proof processing device according to claim 1, wherein The side wall of the material distributing frame (4) is provided with a sliding groove (7), a screw rod (71) is rotationally arranged in the sliding groove (7), the end of the second material distributing plate (42) is slidingly arranged in the sliding groove (7) and is threadedly connected with the screw rod (71), and the end of the screw rod (71) is connected with a handle (72) penetrating the material distributing frame (4).

5. The capacitor corrosion prevention processing apparatus according to claim 1, wherein The top end of the material guiding plate (3) is rotationally connected with the supporting plate (11), the end wall of the material guiding plate (3) is symmetrically provided with a group of guide blocks (33), the side wall of the supporting plate (11) is provided with a guide groove (331), the guide block (33) is slidingly arranged in the guide groove (331), and the supporting plate (11) is provided with an adjusting assembly (8) for driving the guide block (33) to slide in the guide groove (331).

6. The apparatus of claim 5, wherein the apparatus further comprises a plurality of electrodes. The adjusting assembly (8) comprises an adjusting block (81), an abutting block (82), a second motor (83) and a screw rod (84), the side wall of the supporting plate (11) is provided with an adjusting groove (811) along the length direction thereof, the adjusting block (81) is slidingly arranged in the adjusting groove (811), the screw rod (84) is rotationally arranged in the adjusting groove (811), the second motor (83) is arranged in the adjusting groove (811) and is connected with the screw rod (84), the adjusting block (81) is threadedly connected with the screw rod (84), the abutting block (82) is connected with the adjusting block (81), and the surface of the abutting block (82) is obliquely provided with an abutting surface (821) which abuts against the guide block (33).

7. The device according to claim 1, wherein The surface of the material guiding plate (3) is provided with a letting surface groove (32) along the length direction thereof, the supporting plates (11) are provided with a recovery plate (9) below the letting surface groove (32), the recovery plate (9) is provided with a recovery groove (91), and the recovery plate (9) is detachably connected with the supporting plate (11).

8. The apparatus of claim 1, wherein: The supporting plates (11) are provided with a dryer (10).

Citation Information

Patent Citations

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